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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >A new method to approximate load-displacement relationships of spinal motion segments for patient-specific multi-body models of scoliotic spine
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A new method to approximate load-displacement relationships of spinal motion segments for patient-specific multi-body models of scoliotic spine

机译:一种新的脊髓脊柱患者特异性多体模型脊柱运动段的载荷 - 位移关系的新方法

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Load-displacement relationships of spinal motion segments are crucial factors in characterizing the stiffness of scoliotic spine models to mimic the spine responses to loads. Although nonlinear approach to approximation of the relationships can be superior to linear ones, little mention has been made to deriving personalized nonlinear load-displacement relationships in previous studies. A method is developed for nonlinear approximation of load-displacement relationships of spinal motion segments to assist characterizing in vivo the stiffness of spine models. We propose approximation by tangent functions and focus on rotational displacements in lateral direction. The tangent functions are characterized using lateral bending test. A multi-body model was characterized to 18 patients and utilized to simulate four spine positions; right bending, left bending, neutral, and traction. The same was done using linear functions to assess the performance of the proposed tangent function in comparison with the linear function. Root-mean-square error (RMSE) of the displacements estimated by the tangent functions was 44 % smaller than the linear functions. This shows the ability of our tangent function in approximation of the relationships for a range of infinitesimal to large displacements involved in the spine movement to the four positions. In addition, the models based on the tangent functions yielded 67, 55, and 39 % smaller RMSEs of Ferguson angles, locations of vertebrae, and orientations of vertebrae, respectively, implying better estimates of spine responses to loads. Overall, it can be concluded that our method for approximating load-displacement relationships of spinal motion segments can offer good estimates of scoliotic spine stiffness.
机译:脊柱运动段的负荷 - 位移关系是表征脊柱脊柱模型的刚度以模拟脊柱响应的关键因素。虽然非线性方法近似关系的方法可以优于线性的方法,但是已经提到了在以前的研究中导出个性化的非线性负载 - 位移关系。一种方法是为脊柱运动段的负载 - 位移关系的非线性近似,以帮助表征体内脊柱模型的刚度。我们提出了切线函数的近似,并专注于横向方向的旋转位移。切线功能的特征在于使用横向弯曲测试。多体模型的特征在于18名患者,利用来模拟四个脊柱位置;右弯曲,左弯曲,中性和牵引力。与线性函数相比,使用线性函数来评估所提出的切线功能的性能。由切线函数估计的位移的根均方误差(RMSE)比线性函数小44%。这表明我们的切线功能在与在脊柱运动中涉及的大型位移到四个位置的大型位移的关系中的关系的近似的能力。此外,基于切线函数的模型产生67,55和39%的弗格森角,椎体的位置,椎体的位置和椎体的取向,这意味着对负荷的脊柱反应的更好估计。总的来说,我们可以得出结论,我们近似脊柱运动段的负荷 - 位移关系的方法可以提供劣质脊柱刚度的良好估计。

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